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首页> 外文期刊>Nanoscale >Converting carbon nanofibers to carbon nanoneedles: catalyst splitting and reverse motion
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Converting carbon nanofibers to carbon nanoneedles: catalyst splitting and reverse motion

机译:将碳纳米纤维转换为碳纳米纤维:催化剂分裂和反向运动

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Carbon nanoneedles (CNNs) were grown using a plasma-enhanced chemical vapor deposition process in which the source gas (C2H2) was turned off 10 min before the NH3 flow and plasma were turned off. It is demonstrated that tubular carbon nanofibers (CNFs) grow while the source gas is on. However, once the source gas is turned off, the Ni catalyst at the top of each CNF splits to form a small catalyst that remains at the top of the tube and a larger catalyst that travels down the interior of the tube. We postulate that the motion of the bottom (larger) catalyst is driven by etching of the graphitic walls and 'cups' inside the CNF. This process, combined with slowing growth of the CNFs and etching of the material above the bottom catalyst, converts the carbon nanofibers to the final nanoneedle shape.
机译:使用等离子增强化学蒸气沉积工艺生长碳纳米果(CNN),在NH3流和血浆关闭之前,将源气体(C2H2)关闭10分钟。 证明管状碳纳米纤维(CNF)在源气体开始时生长。 但是,一旦关闭了源气体,每个CNF顶部的NI催化剂将形成一个小催化剂,该催化剂保留在管子顶部,并形成较大的催化剂,该催化剂沿着管子的内部沿着较大的催化剂。 我们假设底部(较大)催化剂的运动是由CNF内部石墨壁和“杯子”的蚀刻驱动的。 这个过程与CNF的生长放缓和底部催化剂上方的材料的蚀刻结合,将碳纳米纤维转换为最终的纳米形状。

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